DocumentCode
59244
Title
Gap Waveguide PMC Packaging for Improved Isolation of Circuit Components in High-Frequency Microwave Modules
Author
Zaman, A.U. ; Alexanderson, Mats ; Vukusic, Tin ; Kildal, Per-Simon
Author_Institution
Dept. of Signals & Syst., Chalmers Univ. of Technol., Goteborg, Sweden
Volume
4
Issue
1
fYear
2014
fDate
Jan. 2014
Firstpage
16
Lastpage
25
Abstract
In this paper, perfect magnetic conductor (PMC)-based packaging technique was used to improve the isolation performance among various microwave circuit components such as high-gain amplifier chains. In this approach, a periodic structure (such as metal pin rows) together with the ground plane of the substrate created a stopband for unwanted parallel plate or cavity modes as well as substrate modes, and thereby suppressed the problems of circuit resonances and related package phenomena. This paper describes two Ka-band amplifier chains that were tested with this new packaging technique. Firstly, a single amplifier chain was tested for maximum stable gain operation, and it was found that the stable gain of was achieved, whereas traditional metal wall package with RF absorber offered stable gain of 40 dB, thus showing significant isolation improvement. Secondly, two high-gain amplifier chains were placed side by side and their mutual isolation was tested. With the proposed gap waveguide packaging, a minimum isolation of 78 dB was achieved, whereas a complete metal shield provided a minimum isolation of only 64 dB over the band of interest.
Keywords
circuit resonance; conductors (electric); electronics packaging; microwave amplifiers; microwave circuits; periodic structures; waveguide components; Ka-band amplifier chains; PMC-based packaging technique; RF absorber; circuit resonances; gain 40 dB; gap waveguide PMC packaging; high-frequency microwave modules; high-gain amplifier chains; isolation improvement; isolation performance; metal pin rows; metal shield; metal wall package; microwave circuit components; package phenomena; perfect magnetic conductor; periodic structure; stable gain operation; stopband; substrate modes; Cavity resonators; Metals; Microwave circuits; Packaging; Substrates; Waveguide discontinuities; Isolation; PMC packaging; parallel-plate modes; self-oscillation; stable gain; substrate modes;
fLanguage
English
Journal_Title
Components, Packaging and Manufacturing Technology, IEEE Transactions on
Publisher
ieee
ISSN
2156-3950
Type
jour
DOI
10.1109/TCPMT.2013.2271651
Filename
6637079
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